PSI - Issue 14

Amit Singh et al. / Procedia Structural Integrity 14 (2019) 78–88 Amit Singh et al./ Structural Integrity Procedia 00 (2018) 000 – 000

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Popov A.A., Leder M.O., Popova M.A., Rossina N.G. and Narygina I.V., 2015. Effect of Alloying on Precipitation of Intermetallic Phases in Heat Resistant Titanium Alloys. The Physics of Metal and Metallography,116, 261 – 266. Amit Kumar, Nidhi Singh, Vakil Singh, 2003. Influence of stabilization treatment on low cycle fatigue behavior of Ti alloy IMI 834. Materials Characetrzation, 51, 225-233. Omprakash C.M., Satyanarayana D.V.V., Kumar V., 2010. Effect of microstructure on creep and creep crack growth behaviour of titanium alloy. Transaction of Indian Institute of Metals, 63, 457-459. Chandra Rao B.S.S., Srinivas M., Kamat S.V., 2009. The effect of volume fraction of primary α phase on fracture toughness behaviour of Timetal 834 titanium alloy under mode I and mixed mode I/III loading. Material Science and Engineering A, 520, 29-35. Balasundar I., Raghu T., Kashyap B.P., 2014. Correlation between microstructure features and creep strain in a near α titanium alloy processed in the α+β regime. Material Science and Engineering A, 609, 241-249. Omprakash C.M., Satyanarayana D.V.V., Kumar V., 2011. Effect of primary α content on creep and creep crack growth behaviour of near α titanium alloy. Material Science and Technology, 27,1427-1432. Chandan Mondal, A.K. Singh, A.K. Mukhopadhay, K. Chattopadhay, 2013. Tensile flow and work hardening behavior of hot cross rolled AA7010 aluminum alloy sheets. Materials Science & Engineering A, 577, 87-100 Hollomon J.H., 1945. Tensile Deformation. Transactions of the Metallurgical Society of AIME, 162, 268-290. Ludwik P., 1909. Elemente der technologischen Mechanic, Verlag von Springer, Leipzig, pp. 32 Voce E., 1948.The Relationship between Stress and Strain for Homogeneous Deformation. Journal of the Institute of Metal,74, 537-562. Ludwigson D.G., 1971. Modified stress strain relation for FCC metal and alloys. Metallurgical Transactions, 2, 2858-2828. Swift H. W., 1952. Plastic Instability under plane Stress. Journal of Mechanics and physics of solids, 1, 1-18 Orowan E., 1940. Problems of plastic gliding. Proceedings of the Physical Society, 52, 8-22. Mecking H., Kocks U.F., 1981. Kinetics of flow and strain hardening. Acta Metallurgica, 29, 1865-1875. Reed Hill R.E., Cribb W.R., Monteiro S.N., 1973. Concerning the analysis of tensile stress - strain data using ln (dσ/dε) vs ln σ diagrams. Metallurgical Transactions, 4, 2665-2267. Lutjering G., 1998. Influence of processing on microstructure and mechanical properties of α+β titanium alloys. Materials Science & Engineering A, 243, 32-45. Andres C., Gysler A., Lutjering G., 1997. Correlation between microstructure and creep- behavior of the high- temperature Ti alloy IMI 834. Zeitschrift fur Metallkunde, 88, 97 – 203. Bergstrom Y. and Aronson B., 1972. The application of a dislocation model to the strain and temperature dependence of the strain hardening exponent n in the Ludwik-Hollomon relation between stress and strain in mild steels. Metallurgical Transactions, 3, 1951- 1957. Kashyap B.P., Tangri K., 1995. On the Hall- Petch relationship and substructural evolution in type 316L stainless steel. Acta Metallurgica, 43, 3971-3981. Man J., M. Holzmann M., Vlach B., 1967. Microstrain Region and Transition to Macrostrain in 99.9% ploy crystalline copper. Physica Status Solidi b, 19, 543 – 553. Srinadh K.V., Nidhi Singh, V Singh, 2007. Role of Ti3Al/ silicide on tensile properties of Timetal 834 at various temperatures. Bulletin of Materials Science, 30, 595-600.

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